Results 11 to 20 of about 156,715 (302)

Effect of contact resistance in organic field‐effect transistors

open access: yesNano Select, 2021
Contact resistance (RC) is universally present in organic field‐effect transistors (OFETs) and the performance of OFETs can be easily affected by RC, which will result in poor performances such as low mobility (μ), large threshold voltage (VT), and non ...
Yanjun Shi   +4 more
doaj   +2 more sources

Organic semiconductors for organic field-effect transistors [PDF]

open access: yesScience and Technology of Advanced Materials, 2009
The advantages of organic field-effect transistors (OFETs), such as low cost, flexibility and large-area fabrication, have recently attracted much attention due to their electronic applications.
Yoshiro Yamashita
doaj   +3 more sources

High‐Frequency Operation of Vertical Organic Field‐Effect Transistors [PDF]

open access: yesAdvanced Science, 2022
The high‐frequency and low‐voltage operation of organic thin‐film transistors (OTFTs) is a key requirement for the commercial success of flexible electronics.
Marco Höppner   +6 more
doaj   +2 more sources

25th Anniversary Article: Organic Field-Effect Transistors: The Path Beyond Amorphous Silicon

open access: yesAdvanced Materials, 2014
Over the past 25 years, organic field‐effect transistors (OFETs) have witnessed impressive improvements in materials performance by 3–4 orders of magnitude, and many of the key materials discoveries have been published in Advanced Materials.
H. Sirringhaus
semanticscholar   +3 more sources

High-performance flexible organic field effect transistors with print-based nanowires [PDF]

open access: yesMicrosystems & Nanoengineering, 2023
Polymer nanowire (NW) organic field-effect transistors (OFETs) integrated on highly aligned large-area flexible substrates are candidate structures for the development of high-performance flexible electronics.
Liangkun Lu   +14 more
doaj   +2 more sources

Dinaphthotetrathienoacenes: Synthesis, Characterization, and Applications in Organic Field‐Effect Transistors [PDF]

open access: yesAdvanced Science, 2022
The charge transport of crystalline organic semiconductors is limited by dynamic disorder that tends to localize charges. It is the main hurdle to overcome in order to significantly increase charge carrier mobility.
Rémy Jouclas   +19 more
doaj   +2 more sources

1,7‐Diazaperylene in Organic Field Effect Transistors [PDF]

open access: yesIsrael Journal of Chemistry, 2022
AbstractA thorough material characterization of 1,7‐diazaperylene via multiple investigation techniques (cyclic voltammetry, photoluminescence, photoluminescence excitation, impedance spectroscopy) was performed to understand its applicability in organic electronic devices.
Cigdem Yumusak   +6 more
openaire   +3 more sources

Advances in flexible organic field-effect transistors and their applications for flexible electronics

open access: yesnpj Flexible Electronics, 2022
Flexible electronics have suggested tremendous potential to shape human lives for more convenience and pleasure. Strenuous efforts have been devoted to developing flexible organic field-effect transistor (FOFET) technologies for rollable displays ...
Kai Liu   +4 more
semanticscholar   +1 more source

Impact of Planar and Vertical Organic Field‐Effect Transistors on Flexible Electronics

open access: yesAdvances in Materials, 2022
The development of flexible and conformable devices, whose performance can be maintained while being continuously deformed, provides a significant step toward the realization of next‐generation wearable and e‐textile applications.
A. Nawaz   +4 more
semanticscholar   +1 more source

Direct Comparison of the Effect of Processing Conditions in Electrolyte-Gated and Bottom-Gated TIPS-Pentacene Transistors

open access: yesElectronic Materials, 2022
Among the plethora of soluble and easy processable organic semiconductors, 6,13-Bis(triisopropylsilylethynyl)pentacene (TIPS-P5) is one of the most promising materials for next-generation flexible electronics.
Nicolò Lago   +5 more
doaj   +1 more source

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